problem description title="dynamic frame analysis" nodes=8 elements=9 analysis=spectral analysis parameters beta=0.25 gamma=0.5 alpha=0.0 start=0.0 stop=40.0 step=0.2 nodes=[3,8] dofs=[Tx] mass-mode=lumped nodes 1 x=0 y=0 constraint=fixed 2 x=360 y=0 3 x=0 y=180 constraint=free 4 x=360 5 x=0 y=300 force=f1 6 x=360 7 x=0 y=420 force=f1 8 x=360 beam elements 1 nodes=[1,3] material=wall_bottom 2 nodes=[3,5] material=wall_top 3 nodes=[5,7] 4 nodes=[7,8] material=floor_top load=top_wt 5 nodes=[5,6] material=floor_bottom load=bottom_wt 6 nodes=[3,4] load=bottom_wt 7 nodes=[8,6] material=wall_top 8 nodes=[6,4] 9 nodes=[4,2] material=wall_bottom material properties wall_bottom A=13.2 Ix=249 E=30e6 rho=0.0049 wall_top A=6.2 Ix=107 E=30e6 rho=0.0104 floor_top A=12.3 Ix=133 E=30e6 rho=0.01315 floor_bottom A=24.7 Ix=237 E=30e6 rho=0.0136 distributed loads top_wt direction=perpendicular values=(1,-62.5) (2,-62.5) bottom_wt direction=perpendicular values=(1,-130) (2,-130) forces f1 Sfx=1.25/4*pow(6.0,4.0)/pow(w,5.0)*9*exp(-1.25*pow(6.0/w, 4.0)) constraints fixed Tx=c Ty=c Rz=c free Tx=u Ty=u Rz=u end